SUMMERY OF THE UTILITY MODEL
The present invention is directed to solving at least one of the problems of the prior art. To this end, it is an object of the present invention to propose a fascia gun having a function of facilitating hot compress.
The fascia gun according to an embodiment of the utility model comprises: the shell, the heat exchange piece, back lid and power unit are equipped with accommodation space in the shell, and the shell has relative first end and second end, and the heat exchange piece is connected at the second end, and the second end of shell is located to back lid, and the heat exchange piece is located between second end and the back lid, and the heat exchange piece is suitable for and covers the heat transfer after with, and power unit locates in the shell, and power unit is used for being connected and drive the first motion of massage with the massage head.
According to the fascia gun provided by the embodiment of the utility model, the massage head is arranged at the first end of the shell, and the heat exchange piece is arranged at the second end, so that the fascia gun not only has a massage function but also has a hot compress function under the condition that the overall structure of the fascia gun is not changed, the structure of the fascia gun can be simplified, a user can conveniently and rapidly select and use different functions, and the heat exchange piece is arranged between the second end and the rear cover, so that the rear cover can be stably leaned on a human body by using the weight of the fascia gun during use, the rear cover is more tightly attached to the human body, the relative position of the fascia gun and the human body is conveniently maintained, and the heat exchange efficiency can be improved.
In some embodiments, the heat exchange member is sandwiched between the second end and the back cover.
In some embodiments, the fascial gun further comprises a thermal shield coupled to an end face of the second end; the heat exchange piece comprises a heating piece and an electric connecting piece, the heating piece is attached to the surface, away from the second end, of the heat insulation piece, one end of the electric connecting piece is connected with the heating piece, and the other end of the electric connecting piece is electrically connected with a circuit board of the fascia gun.
In some embodiments, the thermal insulation is a foam layer, a heat emitting layer, a foam layer, or a vacuum insulation panel.
In some embodiments, a resilient member connected to an end face of the second end; the heat exchange piece is clamped between the elastic piece and the rear cover.
In some embodiments, the elastic member is a foam layer, a rubber layer, or a silicone pad.
In some embodiments, the heat generating member is a film structure.
In some embodiments, the rear cover is convexly arranged along a direction away from the accommodating space, and a surface of the rear cover facing away from the accommodating space is a curved surface.
In some embodiments, a support portion is provided on an end surface of the second end, and the heat exchanging member is provided on the support portion.
In some embodiments, the support portion and the two surfaces of the rear cover close to each other are adapted in shape, so that the heat exchange member can be interposed between the support portion and the rear cover.
In some embodiments, the support portion includes a plurality of ribs spaced apart at the second end.
In some embodiments, the ribs are annular, and a plurality of the ribs are concentrically arranged.
In some embodiments, the height of the rib is gradually reduced in a radial direction outward of the rib, the end surface of the free end of the rib forms a curved surface, and the heat exchange member is attached to the curved surface.
In some embodiments, the power mechanism includes a drive assembly disposed within the housing and spaced apart from an end surface of the second end.
In some embodiments, the fascial gun further comprises an energy supply assembly, the power mechanism and the energy supply assembly being at least partially disposed between the opening and the back cover such that a center of gravity of the fascial gun is located between the opening and the back cover.
In some embodiments, a handle is further included, the handle being connected to a non-end location of the housing.
In some embodiments, the housing includes an upper cover and a lower cover that snap-fits with the upper cover to form the housing, the handle being convex in a direction away from the upper cover
Additional aspects and advantages of the utility model will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the utility model.
Detailed Description
Embodiments of the present invention will be described in detail below, the embodiments described with reference to the drawings being illustrative, and the embodiments of the present invention will be described in detail below.
The fascia gun 100 according to an embodiment of the utility model is described below with reference to fig. 1-7, including: the heat exchanger comprises a shell 120, a heat exchange part 140, a rear cover 150 and a power mechanism 160.
A receiving space 121 is provided in the housing 120, and the receiving space 121 is suitable for receiving the rest of the electrical structures in the fascial gun 100, such as: the power mechanism 160, a control circuit connected with the power mechanism 160 and an energy supply assembly connected with the control circuit. On one hand, the occupied space of the electric appliance structure can be reduced, and the space utilization rate in the fascia gun 100 is improved; on the other hand, the larger accommodating space 121 provides a heat dissipation space for the electrical appliance structure, and the service life of the electrical appliance structure is prolonged.
As shown in fig. 1, the housing 120 has a first end 122 and a second end 123 opposite to each other, an end surface of the first end 122 away from the second end 123 is opened with an opening 1221, and the opening 1221 is communicated with the accommodating space. The opening 1221 is used for the massage head 110 to pass through so that the massage head 110 can be connected with the power mechanism 160 located in the accommodating space. The heat exchanging element 140 may be connected with the case 120. Thus, one end of the fascia gun 100 can be connected with the massage head 110, and the power structure drives the massage head 110 to do reciprocating motion to tap the massage part, so that the muscles and the fascia are relaxed and loose-proof, and the lactic acid among the muscles is eliminated; and the other end of the fascia gun 100 is provided with a heat exchange member 140, and the heat exchange member 140 is adapted to exchange heat with the rear cover 150, it can be understood that the heat exchange member 140 is adapted to generate heat or cool so as to raise or lower the temperature of the rear cover 150 exchanging heat with the heat exchange member 140, thereby enabling hot or cold compress on the skin when the rear cover 150 is in contact with the skin. It can be understood that after the user uses the massage function, the user only needs to turn the fascia gun 100 to perform hot compress, and the operation flow of the user using the fascia gun 100 is simplified.
As shown in fig. 1, a rear cover 150 is provided to cover the second end of the housing 120. The heat exchange member 140 is disposed between the second end 123 and the rear cover 150, so that the rear cover 150 has a function of blocking the second end 123 of the housing 120, and simultaneously protects the structure inside the rear cover 150, thereby improving the structural strength of the fascia gun 100 and improving the safety of the fascia gun 100.
Alternatively, the heat exchange member 140 may be a semiconductor heat exchange member. The fascial gun 100 can also have a heat sink or heat dissipating structure that can be disposed proximate to the heat exchange element 140 or in contact with the heat exchange element 140 for dissipating heat to the heat exchange element 140.
When the user uses manadesma rifle 100, after first end 122 installation massage head 110 of manadesma rifle 100, have the vibration massage function, and second end 123 has the hot compress function, make manadesma rifle 100 have different functions from this, the user can conveniently select to use different functions, and because heat exchange 140 and massage head 110 set up the both ends with manadesma rifle 100 separately, heat exchange 140 keeps away from the motion end setting of manadesma rifle 100 promptly, can reduce the influence that heat exchange 140 received massage head 110 vibrations, improve the stability of heat exchange 140 structural connection.
According to the fascia gun 100 of the embodiment of the utility model, the massage head 110 is arranged at the first end 122 of the shell, and the heat exchange piece 140 is arranged at the second end 123, so that the fascia gun 100 not only has a massage function, but also has a hot compress function under the condition that the overall structure of the fascia gun 100 is not changed, and the structure of the fascia gun 100 can be simplified; and through setting up heat transfer member 140 between second end 123 and the back lid, power unit 160 locates in casing 120, and usable weight of fascial rifle 100 self leans on the back lid 150 steadily to be established on the human body and make the laminating of back lid 150 and human body inseparabler when using to conveniently maintain the relative position of fascial rifle 100 and human body, and because the laminating closely can improve heat exchange efficiency.
Optionally, the heat exchange member 140 is sandwiched between the second end 123 and the rear cover 150. Thus, the rear cover 150 can fix the heat exchange member 140, protect the heat exchange member 140, and improve the safety and reliability of the heat exchange member 140 during operation. And because heat exchange member 140 presss from both sides and locates between second end 123 and back lid 150, heat exchange member 140 contacts with back lid 150 promptly, when generating heat or refrigerating of heat exchange member 140, can directly heat or refrigerate back lid 150, improves heat transfer efficiency, and the user's use impression that uses manadesma rifle 100 is promoted.
As shown in fig. 7, in some embodiments, fascia gun 100 can include insulation 170.
The thermal insulation member 170 is coupled to an end surface of the second end 123. The thermal insulation member 170 may be a foam layer, a heat emitting layer, a foam layer, or a vacuum insulation panel.
The heat exchanging member 140 may be a heat generating member 142 and an electrical connecting member 180. The heating element 142 is attached to a surface of the heat insulation element 170 away from the second end 123, one end of the electrical connector 180 is connected to the heating element 142, and the other end of the electrical connector 180 is electrically connected to the circuit board 144 of the fascial gun 100. Electrical connection 180 may be a wire.
It should be noted that when the heating element 142 is powered, it can generate heat, so that the second end 123 of the fascia gun 100 has a hot compress function. The second end 123 of the fascia gun 100 contacts with the user for hot compress, so that the using process of the fascia gun 100 by the user can be simplified, and the using efficiency of the fascia gun 100 can be improved.
It can be understood that, install heat insulating part 170 in the one side that deviates from second end 123 of generating heat piece 142 for heat insulating part 170 can play good isolated thermal effect to generating heat piece 142, not only can promote the better transmission of the effect of heating of generating heat piece 142 to the user on one's body, promote user's use impression, but also can support the piece that generates heat, make the produced heat of generating heat piece 142 can more stable output transmit to back lid 150 on, thereby can promote the hot compress massage effect of manadesma rifle 100. In addition, when the user uses the hot compress function, the heat insulating member 170 may serve as a buffer member, and the touch feeling when the heat generating member 142 is in contact with the skin is improved, thereby improving the skin-friendly effect of the heat generating member 142.
In some examples, the rear cover 150 may be made of a material having a certain flexibility and a good skin-friendly effect, and when the rear cover 150 is in contact with the skin, the rear cover 150 may be deformed adaptively, so that the heat exchanging member 140 can contact the skin together with the rear cover 150, and thus the skin-friendly effect may be improved.
In addition, the heat exchange member 140 can be electrically connected to the circuit board 144, so that the heat exchange member 140 is suitable for controlling the circuit board 144, and a user can select whether the heat exchange member 140 works or not according to requirements, thereby controlling the hot compress function of the fascial gun 100, and closing the heat exchange member 140 when the fascial gun 100 does not need hot compress, so that the use of the fascial gun 100 is more energy-saving and efficient.
Further, the heat insulating member 170 is a foam layer, a heat emitting layer, a foam layer, or a vacuum insulation panel. Like this, the heat that the isolated piece 142 that generates heat that heat insulating part 170 can be better is followed heat insulating part 170 one side effluvium, not only makes the heat that generates heat piece 142 and gives off can directly carry out the heat transfer with back lid 150, promotes manadesma rifle 100's hot compress efficiency, can prevent moreover that the heat from influencing the heat of all the other electrical apparatus structures in manadesma rifle 100, avoids electrical apparatus structure to receive quick ageing corruption behind the heat to increase manadesma rifle 100's life. Alternatively, the heat generating member 142 has a film-like structure. It can be understood that the membranous structure can have a bigger heating area, not only can promote and back cover 150 between heat exchange efficiency for manadesma rifle 100 can be faster carries out the hot compress, can let manadesma rifle 100 heat effect can be stable moreover exchange with back cover 150, avoid back cover 150 heat transfer heat uneven, thereby make manadesma rifle 100's hot compress performance promoted.
Optionally, fascial gun 100 can include an elastic member (not shown) attached to an end face of second end 123. The elastic component can be a foam layer, a rubber layer or a silica gel pad, and the heat exchange component can be clamped between the elastic component and the rear cover.
In this way, the elastic member is mounted on the side of the heat generating member 142 away from the second end 123, so that the elastic member can perform a good supporting and buffering function on the heat generating member 142, and can be matched with the rear cover 150 to be deformed and clamped for installation, so that the heat exchanging member 140 is clamped between the elastic member and the rear cover 150. In addition, when the user used the hot compress function, the elastic component can be as the bolster, and the sense of touch when promoting the piece 142 that generates heat and skin contact to promote the close skin effect of the piece 142 that generates heat.
In one embodiment, an elastic member may be used instead of the thermal insulation member 170, i.e., the elastic member may be disposed at the position shown by the thermal insulation member 170, and the elastic member may also serve as thermal insulation when it is a foam layer, for example.
In another embodiment, fascia gun 100 can include both insulation 170 and elastic, which can be disposed between insulation 170 and rear cover 150.
In one embodiment, the heat exchange member 140 may have a film-like structure. For example, the heat generating member 142 is a film structure and is integrally formed as a thin film, so that the heat exchanging member 140 can be fixed without being limited by the sectional shape of the second end 123, and the specific structure of the second end 123 can be adapted to the structure of other components disposed in the accommodating space of the fascial gun 100.
Optionally, the rear cover 150 is disposed to protrude in a direction away from the accommodating space, and a surface of the rear cover 150 facing away from the accommodating space is a curved surface. The surface of the rear cover 150 facing away from the accommodating space is set to be a curved surface, so that the surface area of the rear cover 150 can be increased, and the heat exchange efficiency is improved; when the rear cover 150 is pressed on the skin of the human body, the skin is slightly sunken by applying pressure on the skin of the human body, so that the rear cover 150 can be better and tightly attached to the skin of the human body, the curved surface is smooth and has no edges and corners, and the risk of discomfort of the human body during attachment can be reduced.
Referring to fig. 3 to 6, optionally, a support part 1231 is disposed on an end surface of the second end 123, and the heat exchanging element 140 is disposed on the support part 1231.
In one embodiment, the support 1231 may be adapted to support the thermal insulation member 170 or the elastic member, and the thermal insulation member 170 or the elastic member is adapted to support heat exchange.
The second end 123 is provided with the support part 1231, so that the heat exchange member 140 can be further supported, the safety and reliability of the heat exchange member 140 can be improved, and the fascia gun 100 can be used more safely.
Alternatively, the shapes of the two surfaces of the support 1231 and the rear cover 150 close to each other are matched, so that the heat exchanging element 140 can be interposed between the support 1231 and the rear cover 150.
In one embodiment, the heat exchanging member 140 has a film-like structure, and the heat exchanging member 140 can be more stably interposed between the supporting portion 1231 and the rear cover 150 by adapting the shapes of the two surfaces of the supporting portion 1231 and the rear cover 150, which are close to each other.
As shown in fig. 4 and 5, optionally, the support 1231 is a rib 1232 provided at the second end 123, and the rib 1232 is spaced apart.
Thus, the plurality of ribs 1232 arranged at intervals can uniformly support the support part 1231, and the support effect of the support part 1231 on the heating element 142 is improved; moreover, the plurality of ribs 1232 are provided, which can reduce the material of the support part 1231, help to reduce the production cost of the fascial gun 100, and improve the market competitiveness of the fascial gun 100. Meanwhile, the support part 1231 has a certain height and a gap, so that a heat dissipation effect can be achieved, and heat of the heat exchange member 140 is prevented from being transferred to other electrical structures in the accommodating space 121.
Further, the ribs 1232 are annular, and the plurality of ribs 1232 are concentrically arranged. Like this, a plurality of ribs 1232 that set up concentrically can play the supporting role to each part of heat insulating part 170, and the supporting role is more balanced for the supporting effect of supporting part 1231 to heat insulating part 170 obtains promoting.
Referring to fig. 4, in some embodiments, the height of the ribs 1232 is gradually decreased in a direction radially outward of the ribs 1232, the end surfaces of the free ends of the ribs 1232 form a curved surface, and the heat exchanging member 140 is attached to the curved surface to increase the contact area between the heat exchanging member 140 and the rear cover 150.
In an embodiment, the rear cover 150 is arranged in a convex manner along a direction away from the accommodating space, and the surface of the rear cover 150 away from the accommodating space is a curved surface, it can be understood that the ribs 1232 with different heights can be suitable for the arrangement of the shapes of the rear cover 150, so that the heating element 142 can be more attached to the rear cover 150, and the heating element 142 is more attached to the rear cover 150, thereby improving the structural utilization rate of the space in the fascia gun 100.
Moreover, because the free end that uses rib 1232 forms the curved surface for have the clearance between the rib 1232, not only can be convenient for rib 1232 conduct heat, promote back lid 150's heat exchange efficiency, can let back lid 150's radiating efficiency higher moreover, thereby let the life of fascial rifle 100 obtain promoting. In addition, because rib 1232 constitutes the evagination structure in radial direction, not only make rib 1232 more for laminating with back lid 150, promote the heat exchange efficiency between rib 1232 and the back lid 150, make the user when using manadesma rifle 100 moreover, manadesma rifle 100 is because back lid 150 contacts with user's skin under self action of gravity, make the laminating effect between back lid 150 and the user promoted, thereby the hot compress effect that lets the user feel becomes better.
As shown in fig. 1 and 2, in some embodiments, the housing 120 includes an upper cover 124 and a lower cover 125. Wherein, the lower cover 125 is buckled with the upper cover 124 to form the housing 120. It is understood that the upper cover 124 and the lower cover 150 construct the receiving space 121 in the housing 120. Thus, the housing 120 is divided into the upper cover 124 and the lower cover 125, so that the difficulty in producing the housing 120 is reduced, and the production efficiency of the housing 120 is improved. In addition, the upper cover 124 and the lower cover 125 may be connected to both the rear cover 150, so that the connection stability between the rear cover 150 and the upper cover 124 and the lower cover 125 is improved, thereby further improving the connection reliability between the rear cover 150 and the housing 120.
As shown in fig. 2, in some embodiments, the upper cover 124 has a first clamping portion 126, the first clamping portion 126 extends toward the lower cover 125, the lower cover 125 has a second clamping portion 127, and the first clamping portion 126 and the second clamping portion 127 are clamped. It can be understood that, the upper cover 124 and the lower cover 125 can be connected in a clamping manner, which not only makes the connection between the upper cover 124 and the lower cover 125 more stable, and improves the structural strength of the housing 120, but also enables the upper cover 124 and the lower cover 125 to be detachable, and when improving the production efficiency of the fascial gun 100, the fascial gun 100 can be conveniently detached, and the repair and maintenance efficiency of the fascial gun 100 is improved.
In some embodiments, the first clamping portion 126 and the second clamping portion 127 are both multiple, and the multiple first clamping portions 126 and the multiple second clamping portions 127 are in one-to-one correspondence and clamped. In this way, the first clamping portions 126 and the second clamping portions 127 are correspondingly clamped, so that the connection stability between the upper cover 124 and the lower cover 125 can be further improved, and the structural strength of the fascial gun 100 is increased. In addition, the connection of the shell 120 between the first clamping portion 126 and the second clamping portion 127 after the connection failure is still reliable, and the use reliability of the fascial gun 100 is further improved. In the description of the present invention, "a plurality" means two or more.
Referring to fig. 6 and 7, in some embodiments, the housing 120 may further include a fastener 128, the fastener 128 is sleeved on the second end 123, and the rear cover 150 is connected to the second end 123 by the fastener 128. It can be understood that the fastening member 128 is suitable for fixedly connecting the rear cover 150, and the fastening member 128 has good repeated disassembly performance, so that the rear cover 150 can be disassembled and assembled well, the heat exchange member 140 can be protected when the fascia gun 100 is not used, the safety of the heat exchange member 140 can be improved, and the service life of the fascia gun 100 can be prolonged.
As shown in fig. 1 and 2, fascial gun 100 also includes a handle 130.
The handle 130 is connected with the shell 120, and a space communicated with the accommodating space 121 in the shell 120 can be arranged in the middle of the handle 130, so that on one hand, the volume of the accommodating space 121 can be further increased, and the structural design in the fascia gun 100 is simplified; on the other hand, the number of electrical structures for accommodating the space 121 in the housing 120 can be reduced, so that some electrical structures can be disposed in the space of the handle 130, such as the power supply, thereby further improving the safety of the fascial gun 100.
In one embodiment, the handle 130 and the housing 120 may be separate. The handle may be connected to the lower cover 125.
In one embodiment, the handle 130 may be integrally formed with the lower cover 125, i.e., the lower cover 125 is convex in a direction away from the upper cover 124 to form the handle 130 for gripping by a user. The handle 130 may have a hollow structure therein, and the space in the handle 130 may be a part of the accommodating space 121. It is understood that the power mechanism 160 may also be at least partially disposed within the handle 130.
Alternatively, in both of the above-described forms of the handle 130, the handle 130 may be connected to a non-end position of the housing 120. The handle 130 is connected with the non-end portion of the housing 120, that is, the distance between the connecting position of the handle 130 and the housing 120 and the end surfaces of the first end 122 and the second end 123 is not 0, so that when the user holds the handle 130 for vibration massage or cold and hot compress, the risk that the handle 130 interferes with the human body to affect the fit between the massage head 110 or the rear cover 150 and the human body is reduced.
As shown in fig. 2, in some embodiments, the power mechanism 160 includes a driving assembly (not shown) disposed within the housing 120 and spaced apart from the end surface of the second end 123. The drive assembly may be a motor.
Like this, owing to set up the terminal surface interval with drive assembly and second end 123, not only let drive assembly keep away from heat exchange 140, prevent that heat exchange 140 from influencing drive assembly the very first time after damaging, make each electrical apparatus subassembly relatively independent in the manadesma rifle 100, promote manadesma rifle 100's security, make drive assembly have good heat dissipation space around the drive assembly moreover, make drive assembly's operation more safe and reliable, thereby can increase drive assembly's life, promote manadesma rifle 100's life.
The power mechanism 160 may further include a transmission assembly (not shown), the transmission assembly is connected to the driving assembly and the massage head 110, the driving assembly drives the transmission assembly to move, and the transmission assembly drives the massage head 110 to reciprocate.
The fascial gun 100 also includes an energy supply assembly 161, and the power mechanism 160 and the energy supply assembly 161 are at least partially disposed between the opening 1221 and the rear cover 150 such that the center of gravity of the fascial gun 100 is positioned between the opening 1221 and the rear cover 150. By locating the center of gravity of the fascia gun 100 between the opening 1221 and the rear cover 150, the rear cover can be stably placed on the human body by using the weight of the fascia gun 100, so that the rear cover 150 can be more closely attached to the human body.
When the fascia gun 100 is provided with the handle 130, the weight is less distributed at the handle 130, so that the center of gravity of the fascia gun 100 is located between the opening 1221 and the rear cover 150, when the fascia gun 100 is used, the weight of the fascia gun 100 is pressed on a human body through the first end 122 or the second end 123 as much as possible, so as to improve the massage strength or the heat exchange efficiency, and on the other hand, the burden of hands required to hold the handle 120 can be reduced.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an illustrative embodiment," "an example," "a specific example," or "some examples" or the like mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the utility model. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example.
While embodiments of the utility model have been shown and described, it will be understood by those of ordinary skill in the art that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the utility model, the scope of which is defined by the claims and their equivalents.